4.7 Article

Feeding versus feedback in NGC 1068 probed with Gemini NIFS - I. Excitation

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OXFORD UNIV PRESS
DOI: 10.1093/mnras/stu843

关键词

galaxies: active; galaxies: individual (NGC 1068); galaxies: ISM; galaxies: nuclei

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  1. CNPq
  2. FAPERGS
  3. National Aeronautics and Space Administration

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We present emission-line flux distributions and ratios for the inner approximate to 200 pc of the narrow-line region (NLR) of the Seyfert 2 galaxy NGC 1068, using observations obtained with the Gemini Near-infrared Integral Field Spectrograph (NIFS) in the J, H and K bands at a spatial resolution of approximate to 10 pc and spectral resolution of approximate to 5300. The molecular gas emission - traced by the K-band H-2 emission lines - outlines an off-centred circumnuclear ring with a radius of approximate to 100 pc showing thermal excitation. The ionized gas emission lines show flux distributions mostly outlining the previously known [O III] lambda 5007 ionization bi-cone. But while the flux distributions in the HI and He II emission lines are very similar to that observed in [O III], the flux distribution in the [Fe II] emission lines is more extended and broader than a cone close to the nucleus, showing a 'double bowl' or 'hourglass' structure. This difference is attributed to the fact that the [Fe II] emission, besides coming from the fully ionized region, comes also from the more extended partially ionized regions, in gas excited mainly by X-rays from the active galactic nucleus. A contribution to the [Fe II] emission from shocks along the bi-cone axis to north-east and south-west of the nucleus is also supported by the enhancement of the [Fe II](1.2570 mu m)/[P II](1.1885 mu m) and [Fe II](1.2570 mu m)/Pa beta emission-line ratios at these locations and is attributed to the interaction of the radio jet with the NLR. The mass of ionized gas in the inner 200 pc of NGC 1068 is M-HII approximate to 2.2 x 10(4) M-circle dot, while the mass of the H-2 emitting gas is only M-H2 approximate to 29M(circle dot). Taking into account the dominant contribution of the cold molecular gas, we obtain an estimate of the total molecular gas mass of M-cold approximate to 2 x 10(7) M-circle dot

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